342
Views
12
CrossRef citations to date
0
Altmetric
Original Articles

Lactic Acid Production from Cane Molasses by Lactobacillus delbrueckii NCIM 2025 in Submerged Condition: Optimization of Medium Component by Taguchi DOE Methodology

&
Pages 115-139 | Published online: 12 May 2008

REFERENCES

  • Altaf , M. , Naveena , J. B. and Reddy , G. 2005 . Screening of inexpensive nitrogen sources by amylolytic L. amylophilus GV 6 in single step fermentation . Food Techol. Biotechnol. , 43 ( 3 ) : 235 – 139 .
  • Archibald , F. S. and Fridovich , I. 1981 . Manganese defense against oxygen toxicity in . L. plantarum. J. Bacteriology , 145 ( 1 ) : 442 – 451 .
  • Bai , D. M. , ZhiHui , Y. , Qiang , W. , XueMing , Z. , Xingang , L. and ShiMin , X. 2004 . Ammonium lactate production by L. Lactis BME5–18M in pH controlled fed batch fermentation . Biochem. Eng. J. , 19 : 47 – 51 .
  • Dubois , M. , Gilles , K. A. , Hamilton , J. K. , Rebers , P.A. and Smith , F. 1956 . Colorimetric method of determination of sugars and related substances . Anal Chem. , 28 : 350 – 356 .
  • Gross , R.A. and Karla , B. 2002 . Biodegradable polymers for the environment . Science , 297 : 803 – 807 .
  • Hofvendahl , K. and Hahn-Hagerdal , B. 2000 . Factors affecting the fermentative lactic acid production from renewable resources . Enzyme Microb. Technol. , 26 : 217 – 225 .
  • Hujanen , M. , Linko , S. , Linko , Y.Y. and Leisola , M. 2001 . Optimization of media and cultivation condition for L (+) (S) –lactic acid production by L. casei NRRL B-441 . Applied Microbiol. Biotechnol. , 56 : 126 – 130 .
  • Fitzpatrick , J. J. , Ahrens , M. and Smith , S. 2001 . Effect of manganese on L. casei fermentation to produce lactic acid from whey permeate . Process Biochem. , 36 : 671 – 675 .
  • Herrero , A. A. 2001 . End-product inhibition in anaerobic fermentations . Trends in Biotech. , 1 : 49 – 53 .
  • Kadam , S. R. , Patil , S. S. , Basawde , K. B. , Khire , J. M. and Gokhale , D.V. 2006 . Strain improvement of L. delbrueckii NCIM 2365 for lactic acid production . Process Biochem. , 41 : 120 – 126 .
  • Kimberley , A. C. and Taylor , C. 1996 . A simple colorimetric assay for muramic acid and lactic acid . Appl. Biochem. Biotechnol. , 56 : 49 – 58 .
  • Kotzamanidis , C. H. , Roukas , T. and Skaracis , G. 2002 . Optimization of lactic acid production from beet molasses by Lactobacillus delbrueckii NCIMB 8130 . World J. Microbiol. Biotech. , 18 : 441 – 448 .
  • Liew , S. L. , Ariff , A. B. , Raha , A. R. and Ho , Y. W. 2005 . Optimization of medium composition for production of probiotic microorganism L. rhamnosus using response surface methodology . Int. J. Food Microbiol. , 102 : 130 – 142 .
  • Monteagudo , J. and Rodriguez , M. 1994 . Optimization of the fermentation of beet molasses to lactic acid by Lactobacillus delbrueckii . Acta Biotechnologica , 14 : 251 – 260 .
  • Nagarjun , P. A. R , Rajesham , R. S. and Rao , L.V. 2006 . Optimization of lactic acid production in SSF by L. amylovorus NRRL B-4542 using Taguchi methodology . J. of Microbiol. , 43 ( 1 ) : 38 – 43 .
  • Naveena , B. J. , Altaf , M. , Bhadrayya , K. and Reddy , G. 2004 . Production of L (+) lactic acid from starch by L. amylophilus GV 6 in semi-solid state fermentation using wheat bran . Food Tech. Biotech. , 43 ( 3 ) : 147 – 152 .
  • Naveena , B. J. , Altaf , M. , Bhadryya , K. , Madhavendra , S. S. and Reddy , G. 2005 . Direct fermentation of starch to L (+) lactic acid in SSF by L. amylophilus GV6 using wheat bran as support and substrate: Medium optimization using RSM . Process. Biochem. , 40 : 681 – 690 .
  • Ohkouchi , Y. and Inoue , Y. 2006 . Direct production of L (+)-lactic acid from starch and food waste using L. manihotivorans LMG 18011 . Bioresource Technol. , 97 : 1554 – 1562 .
  • Payot , T. , Chemaly , Z. and Fick , M. 1999 . Lactic acid production by Bacillus coagulans; kinetic studies and optimization of culture medium for batch and continuous fermentations . Enzyme. Microbial. Technol. , 24 : 191 – 199 .
  • Phadke , S. M. Quality Engineering Using Robust Design . Proceedings of the 1988 European Conference . Prentice Hall, Englewood Cliffs, N J. London : Elsevier Applied Science .
  • Prasad , K. K. , Venkata Mohan , S. , Rao , R. S. , Pati , B. R. and Sarma , P. N. 2005 . Laccase production by Pleurotus ostreatus 1804; Optimization of submerged culture condition by Taguchi DOE methodology . Biochem. Eng. J. , 24 : 17 – 26 .
  • Prakasham , R. S. , Rao , Ch. Subba. , Sreenivas , Rao, R. , Rajesham , S. and Sarma , P. N. 2007 . Optimization of alkaline protease production by Bacillus sp. using Taguchi methodology . App. Biochem. Biotechnol. , 120 : 133 – 144 .
  • Ross , P. J. 1996 . Taguchi Techniques for Quality Engineering. , New York : McGraw Hill Book Company .
  • Roy , R. K. 1990 . A Primer on the Taguchi Method. , Dearborn, MI : Society of Manufacturing Engineers .
  • Roy , R. K. 2001 . Design of Experiments Using the Taguchi Approach; 16 Steps to Product and Process Improvement. , New York : John Wiley & Sons .
  • Senthuran , A. , Senthuran , V. , Mattiasson , B. and Kaul , R. 1997 . Lactic acid fermentation in a recycle batch reactor using immobilized . Lactobacillus casei. Biotechnol. Bioeng. , 55 : 841 – 853 .
  • Sirisansaneeyakul , S. , Luangpipat , T. , Vanichsriratana , W. , Srinophakun , T. , Ho‐Hsien Chen , H. and Chisti , Y. 2007 . Optimization of lactic acid production by immobilized Lactococcus lactis IO-1 . J. Ind. Microbiol. Biotechnol. , 34 : 381 – 391 .
  • Somogyi , M. 1952 . Notes on sugar determination . Journal of Biological Chemistry , 195 : 19 – 23 .
  • Taguchi , G. 1986 . Introduction to Quality Engineering, Quality Resources. , New York : Asian Productivity Organization .
  • Wee , U.-J. , Kim , J. N. , Yun , J.-S. and Ryu , H.-W. 2004 . Utilization of sugar molasses for economical L (+) lactic acid production by batch fermentation of Eneterococcus faecalis . Enz. Microbial. Tech. , 35 : 568 – 573 .
  • Wee , Y. J. , Kim , H. O. , Yun , J. S. and Ryu , H. W. 2006 . Pilot-scale lactic acid production via batch culturing of Lactobacillus sp. RKY2 using corn steep liquor as a nitrogen source . Food Technol. Biotechnol. , 44 ( 2 ) : 293 – 298 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.